High-safety dropwise adding tank

By using a lifting and moving structure and auxiliary drive components, the problems of large size and unstable position control of the dripping tank during position relocation are solved, enabling flexible and accurate movement and angle adjustment of the dripping tank, and improving the stability and safety of the movement process.

CN223563908UActive Publication Date: 2025-11-18DALIAN ZHENGZHONG CHEM CO LTD
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Patent Information

Application Number
CN202520088767.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-15
Publication Date
2025-11-18
Estimated Expiration
2035-01-15

AI Technical Summary

Technical Problem

Existing drip tanks are bulky when relocating, requiring specialized equipment, making them difficult to move and resulting in unstable position control.

Method used

The system employs a lifting and moving structure and auxiliary drive components, including a lifting concave block, a lifting concave limit block, a lifting threaded tube, a lifting threaded rod, a lifting drive motor, and a horizontal angle drive motor, to achieve flexible and accurate movement and angle adjustment of the dripping tank.

Benefits of technology

It enables flexible and accurate movement and angle adjustment of the dripping tank, ensuring the stability and safety of the movement process and reducing reliance on specialized equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a high-safety dripping tank, which comprises a dripping tank, a movable bracket and a lifting moving structure, and relates to the technical field of dripping tanks, the high-safety dripping tank realizes flexible adjustment of height, position and angle through the ingenious design of the lifting moving structure and an auxiliary driving component, and is convenient to use. Diversified use requirements are met; the lifting and moving structure takes a lifting driver as a core, and the stable lifting of the dripping tank in the vertical direction is ensured through the precise matching of a lifting gear set, a lifting threaded pipe and a lifting threaded rod; meanwhile, the lifting concave sleeving block and the lifting concave limiting block provide firm supporting and accurate positioning for the lifting process, and the operation accuracy is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to drop tank technical field, concretely is a kind of high safety drop tank. BACKGROUND

[0002] Chemical production process is the complex process of chemical treatment to raw materials to finally produce precious products. In view of the diversity of raw materials and products and the complexity of production process, industry has developed thousands of chemical production processes. In the preparation link of some chemical products, drop tank as key equipment is used to store chemical substances obtained by refining such as acid, alcohol, gas. Compared with traditional flat-bottom water tank, drop tank can empty the liquid in the conical-bottom water tank more effectively by virtue of its unique design, showing excellent practicability.

[0003] However, the existing drop tank technology faces a challenge: its volume is relatively large, and when position migration needs to be carried out, professional lifting equipment is often needed to assist operation, which undoubtedly increases the difficulty and inconvenience in the moving process. In addition, during the movement of the drop tank, due to the lack of effective support points, the position control of the drop tank becomes quite tricky, and it is difficult to ensure the stability and safety during the movement. In view of this, in-depth research is conducted on the above problems, and the present case is produced. CONTENT OF THE UTILITY MODEL

[0004] To achieve the above purpose, the utility model realizes through the following technical scheme: a high safety drop tank, comprising: drop tank, mobile support and lifting movement structure, the drop tank is installed on the mobile support, the lifting movement structure is installed on the mobile support, the lifting movement structure contains: two pairs of lifting concave type suit block, two pairs of lifting concave type limit block, two pairs of lifting screw pipe, two pairs of lifting screw rod, back-shaped suit block, lifting drive machine, lifting gear set, two pairs of lifting convex cylindrical block, two pairs of horizontal angle gear, two pairs of horizontal angle drive machine and auxiliary drive assembly;

[0005] Two pairs of the lifting concave type sleeve blocks are installed on the moving support, two pairs of the lifting concave type limiting blocks are movably inserted into the inner sides of the two pairs of the lifting concave type sleeve blocks, the back-to-shape sleeve block is installed on the two pairs of the lifting concave type limiting blocks, two pairs of the lifting threaded pipes are movably inserted into the back-to-shape sleeve block and the two pairs of the lifting concave type limiting blocks through bearings, two pairs of the lifting threaded rods are movably inserted into the inner sides of the two pairs of the lifting threaded pipes, the lifting gear set is sleeved on the two pairs of the lifting threaded pipes, the lifting drive machine is installed on the inner side of the back-to-shape sleeve block, and the driving end of the lifting drive machine is connected to the lifting gear set, two pairs of the lifting convex type cylindrical blocks are movably inserted into the inner sides of the two pairs of the lifting concave type limiting blocks through bearings, two pairs of the horizontal angle drive machines are installed on the inner sides of the two pairs of the lifting concave type limiting blocks, gear grooves are formed in the two pairs of the lifting convex type cylindrical blocks, two pairs of the horizontal angle gears are installed on the driving ends of the two pairs of the horizontal angle drive machines, and the two pairs of the horizontal angle gears are in gear meshing with the gear grooves, and the auxiliary drive assembly is installed on the two pairs of the lifting convex type cylindrical blocks;

[0006] It needs to be explained that, when the height or position of the dropping tank needs to be adjusted, the lifting drive machine starts to start; the driving end of the lifting drive machine is connected with the lifting gear set, and the lifting gear set is sleeved on the two pairs of lifting threaded pipes; with the operation of the lifting drive machine, the lifting gear set drives the lifting threaded pipes to start rotating, and since the lifting threaded rods are movably inserted into the inside of the lifting threaded pipes, when the lifting threaded pipes rotate, the lifting threaded rods will move up and down along the lifting threaded pipes under the action of the threads; in this way, through the cooperation of the lifting threaded pipes and the lifting threaded rods, the lifting and moving of the dropping tank in the vertical direction is realized, and at the same time, in order to ensure the stability and accuracy of the dropping tank during the lifting process, the two pairs of lifting concave-shaped sleeving blocks and the lifting concave-shaped limiting blocks play a key role; the lifting concave-shaped sleeving blocks are installed on the moving support, providing stable support for the lifting movement; and the lifting concave-shaped limiting blocks are movably inserted into the inside of the lifting concave-shaped sleeving blocks, together with the back-shaped sleeving blocks, ensuring the accurate positioning of the lifting threaded pipes and the lifting threaded rods during the lifting process, in order to realize the adjustment of the horizontal moving angle of the dropping tank, the horizontal angle drive machine starts to work; the horizontal angle drive machine is installed on the inside of the lifting concave-shaped limiting block, and the driving end thereof is connected with the horizontal angle gear; the lifting convex-shaped cylindrical block is provided with a gear groove, and the horizontal angle gear is in gear engagement with the gear groove; therefore, when the horizontal angle drive machine operates, the horizontal angle gear will drive the lifting convex-shaped cylindrical block to rotate in the horizontal moving direction, thereby realizing the adjustment of the horizontal moving angle of the dropping tank, and the auxiliary driving assembly is installed on the lifting convex-shaped cylindrical block, providing additional support and driving force for the further movement or adjustment of the dropping tank; through the synergistic effect of the lifting and moving structure and the auxiliary driving assembly, the high-safety dropping tank can flexibly and accurately adjust its height, position and angle, meet different use requirements, and at the same time, the two pairs of lifting concave-shaped sleeving blocks and the moving support can support the dropping tank.

[0007] Preferably, the auxiliary driving assembly comprises two pairs of concave-shaped bearing blocks, four pairs of lifting L-shaped bearing blocks, eight pairs of lifting limiting shafts, eight pairs of lifting buffer springs, eight pairs of buffer repulsion lifting magnets, two pairs of lifting moving wheels and two pairs of moving drive machines.

[0008] Two pairs of the concave bearing blocks are respectively installed on two pairs of the lifting convex cylindrical blocks, a pair of lifting bearing grooves is respectively formed on the two pairs of the concave bearing blocks, four pairs of the lifting L-shaped bearing blocks are respectively movably inserted into the inner sides of the four pairs of the lifting bearing grooves, eight pairs of the lifting limiting shafts are respectively inserted into the inner sides of the four pairs of the lifting bearing grooves and movably inserted into the four pairs of the lifting L-shaped bearing blocks, eight pairs of the lifting buffer springs are respectively sleeved on the eight pairs of the lifting limiting shafts, eight pairs of the buffer repulsion magnets are respectively installed on the inner sides of the four pairs of the lifting L-shaped bearing blocks and the four pairs of the lifting bearing grooves, two pairs of the lifting moving wheels are inserted into the four pairs of the lifting L-shaped bearing blocks, and two pairs of the moving drive machines are respectively connected to the two pairs of the lifting moving wheels.

[0009] It should be noted that, in the above, two pairs of concave bearing blocks are used as the core support structure and are stably installed on two pairs of lifting convex cylindrical blocks; a pair of lifting bearing grooves is formed on each of the two pairs of concave bearing blocks to provide necessary space for subsequent movement and buffering; four pairs of lifting L-shaped bearing blocks are movably inserted into the four pairs of lifting bearing grooves, which not only can freely slide in the grooves but also bear the responsibility of transmitting the moving driving force; meanwhile, eight pairs of lifting limiting shafts are accurately inserted between the lifting bearing grooves and the four pairs of lifting L-shaped bearing blocks, which not only ensure the stability of the L-shaped bearing blocks during movement but also provide necessary guidance; in order to enhance the stability of movement, eight pairs of lifting buffer springs are cleverly sleeved on the lifting limiting shafts; these springs can elastically deform when subjected to external force, thereby effectively absorbing and relieving the impact and vibration generated during movement; in addition, eight pairs of buffer repulsion magnets are respectively installed on the inner sides of the lifting L-shaped bearing blocks and the lifting bearing grooves, and the magnetic repulsion force generated between them further enhances the stability of movement and helps to prevent sudden impact caused by external force; when the drop tank needs to be moved, two pairs of moving drive machines start to work; their driving ends are respectively connected to two pairs of lifting moving wheels, and the moving driving force is generated by the rotation of the driving wheels; these driving forces are finally transmitted to the drop tank through transmission components such as the lifting L-shaped bearing blocks, the lifting limiting shafts, and the concave bearing blocks, so as to realize the stable and accurate movement of the drop tank.

[0010] Preferably, two pairs of lifting concave limiting blocks are respectively provided with two pairs of lifting sliding blocks, and the inner sides of two pairs of lifting concave sleeve blocks are respectively provided with two pairs of lifting slideways, and eight pairs of lifting sliding blocks are respectively movably inserted into the inner sides of eight pairs of lifting slideways.

[0011] Preferably, the moving support is provided with two pairs of buffer plates, the moving support is provided with a plurality of telescopic slides, the two pairs of buffer plates are respectively provided with a plurality of telescopic sliding blocks, and the plurality of telescopic sliding blocks are movably inserted into the inside of the plurality of telescopic slides, and the plurality of telescopic slides and the plurality of telescopic sliding blocks are provided with a plurality of buffer magnets.

[0012] Preferably, the two pairs of buffer plates are respectively provided with rubber rings.

[0013] Preferably, the two pairs of lifting concave sleeve blocks are provided with back-shaped supporting rubber rings. Beneficial effects

[0014] The utility model provides a kind of high safety drop tank.It has the following beneficial effects: the high safety drop tank, the high safety drop tank is designed by ingenious lifting movement structure and auxiliary drive component, realizes the flexible adjustment of height, position and angle, satisfies the diversified use demand;Its lifting movement structure is with lifting drive machine as core, is precisely matched by lifting gear set, lifting screw pipe and lifting screw rod, ensures the stable lifting of drop tank in vertical direction;At the same time, lifting concave sleeve block and lifting concave limit block provide solid support and accurate positioning for lifting process, guarantee the accuracy of operation;The meshing design of horizontal angle drive machine and horizontal angle gear, then realizes the easy adjustment of drop tank horizontal moving angle, further improves its flexibility;The addition of auxiliary drive component provides additional support and driving force for the movement of drop tank;The synergistic effect of concave bearing block, lifting L type bearing block, lifting limit shaft and lifting buffer spring etc. component not only ensures the stability of movement, but also effectively absorbs impact and vibration in movement process;And the introduction of buffer repulsion magnet, more enhances the stability of movement, prevents sudden impact caused by external force;The cooperation of two pairs of movement drive machine and lifting movement wheel, then realizes the stable and accurate movement of drop tank, so that it can easily cope with various complex environments;As described above, the high safety drop tank with its flexible, accurate and stable movement performance, and the all-round adjustment ability of height, position and angle, provides strong support for distillation operation, is the ideal choice in industrial production. ACCURACY

[0015] Figure 1 It is the front view cross-sectional view schematic diagram of the high safety drop tank of the utility model.

[0016] Figure 2 It is Figure 1 The local enlarged view of "A".

[0017] In the figure: 1, drop tank; 2, moving support; 3, lifting concave type set block; 4, lifting concave type limiting block; 5, lifting threaded pipe; 6, lifting threaded rod; 7, back-shaped set block; 8, lifting drive machine; 9, lifting gear set; 10, lifting convex type cylindrical block; 11, horizontal angle gear; 12, horizontal angle drive machine; 13, concave bearing block; 14, lifting L type bearing block; 15, lifting limiting shaft; 16, lifting buffer spring; 17, buffer repulsion lifting magnet; 18, lifting moving wheel; 19, moving drive machine. DETAILED DESCRIPTION

[0018] Based on the embodiments in the utility model, all other embodiments obtained by the ordinary skilled in the art without making creative labor belong to the range of the utility model protection.

[0019] Through the personnel in the art, all electrical components in the case and its adaptation power are connected through wire, and should be according to actual situation, select suitable controller and encoder, to meet the control demand, specific connection and control order, should refer to the working principle in the following, the working order between each electrical component is completed, its detailed connection means, for the art known technology, the following mainly introduces working principle and process, no longer to the electrical control do the explanation. EMBODIMENT

[0020] The utility model will be specifically described below in combination with the drawings, such as Figures 1-2As shown, the drop tank 1 is installed on the mobile support 2, the lifting moving structure is installed on the mobile support 2, and the lifting moving structure comprises two pairs of lifting concave sleeve blocks 3, two pairs of lifting concave limiting blocks 4, two pairs of lifting threaded pipes 5, two pairs of lifting threaded rods 6, a meandering sleeve block 7, a lifting drive machine 8, a lifting gear set 9, two pairs of lifting convex cylindrical blocks 10, two pairs of horizontal angle gears 11, two pairs of horizontal angle drive machines 12 and an auxiliary drive assembly. The two pairs of lifting concave sleeve blocks 3 are installed on the mobile support 2, the two pairs of lifting concave limiting blocks 4 are movably inserted into the inner sides of the two pairs of lifting concave sleeve blocks 3, the meandering sleeve block 7 is installed on the two pairs of lifting concave limiting blocks 4, the two pairs of lifting threaded pipes 5 are respectively inserted into the meandering sleeve block 7 and the two pairs of lifting concave limiting blocks 4 through bearings, the two pairs of lifting threaded rods 6 are movably inserted into the inner sides of the two pairs of lifting threaded pipes 5, the lifting gear set 9 is sleeved on the two pairs of lifting threaded pipes 5, the lifting drive machine 8 is installed on the inner side of the meandering sleeve block 7, and the driving end of the lifting drive machine 8 is connected to the lifting gear set 9, the two pairs of lifting convex cylindrical blocks 10 are inserted into the inner sides of the two pairs of lifting concave limiting blocks 4 through bearings, the two pairs of horizontal angle drive machines 12 are respectively installed on the inner sides of the two pairs of lifting concave limiting blocks 4, gear grooves are respectively formed in the two pairs of lifting convex cylindrical blocks 10, the two pairs of horizontal angle gears 11 are respectively installed on the driving ends of the two pairs of horizontal angle drive machines 12, and the two pairs of horizontal angle gears 11 are respectively in gear meshing relationship with the gear grooves, and the auxiliary drive assembly is installed on the two pairs of lifting convex cylindrical blocks 10. The auxiliary drive assembly comprises two pairs of concave bearing blocks 13, four pairs of lifting L-shaped bearing blocks 14, eight pairs of lifting limiting shafts 15, eight pairs of lifting buffer springs 16, eight pairs of buffer repulsion lifting magnets 17, two pairs of lifting moving wheels 18 and two pairs of moving drive machines 19. The two pairs of concave bearing blocks 13 are respectively installed on the two pairs of lifting convex cylindrical blocks 10, a pair of lifting bearing grooves are respectively formed in the two pairs of concave bearing blocks 13, the four pairs of lifting L-shaped bearing blocks 14 are movably inserted into the inner sides of the four pairs of lifting bearing grooves, the eight pairs of lifting limiting shafts 15 are respectively inserted into the inner sides of the four pairs of lifting bearing grooves, the eight pairs of lifting limiting shafts 15 are movably inserted into the four pairs of lifting L-shaped bearing blocks 14, the eight pairs of lifting buffer springs 16 are sleeved on the eight pairs of lifting limiting shafts 15, the eight pairs of buffer repulsion magnets are respectively installed on the inner sides of the four pairs of lifting L-shaped bearing blocks 14 and the four pairs of lifting bearing grooves, the two pairs of lifting moving wheels 18 are inserted into the four pairs of lifting L-shaped bearing blocks 14, and the driving ends of the two pairs of moving drive machines 19 are respectively connected to the two pairs of lifting moving wheels 18.Two pairs of lifting concave limit blocks 4 are respectively provided with two pairs of lifting sliding blocks, and the inner sides of two pairs of lifting concave sleeve blocks 3 are respectively provided with two pairs of lifting sliding channels, and eight pairs of lifting sliding blocks are respectively movably inserted into the inner sides of eight pairs of lifting sliding channels; the moving support 2 is provided with two pairs of buffer plates, and the moving support 2 is provided with a plurality of telescopic sliding channels, two pairs of buffer plates are respectively provided with a plurality of telescopic sliding blocks, and a plurality of telescopic sliding blocks are respectively movably inserted into a plurality of telescopic sliding channels, and a plurality of telescopic sliding channels and a plurality of telescopic sliding blocks are provided with a plurality of buffer magnets; two pairs of buffer plates are respectively provided with rubber rings; two pairs of lifting concave sleeve blocks 3 are provided with back-shaped supporting rubber rings.

[0021] According to the drawings Figures 1-2It is concluded that when the height or position of the dropping tank 1 needs to be adjusted, the lifting drive machine 8 starts to work; the driving end of the lifting drive machine 8 is connected with the lifting gear set 9, and the lifting gear set 9 is sleeved on the two pairs of lifting threaded pipes 5; with the operation of the lifting drive machine 8, the lifting gear set 9 drives the lifting threaded pipes 5 to rotate, and since the lifting threaded rods 6 are movably inserted into the inner side of the lifting threaded pipes 5, when the lifting threaded pipes 5 rotate, the lifting threaded rods 6 will move up and down along the lifting threaded pipes 5 under the action of the threads; in this way, through the cooperation of the lifting threaded pipes 5 and the lifting threaded rods 6, the lifting and moving of the dropping tank 1 in the vertical direction is realized, and at the same time, in order to ensure the stability and accuracy of the dropping tank 1 during the lifting process, the two pairs of lifting concave sleeve blocks 3 and the lifting concave limiting blocks 4 play a key role; the lifting concave sleeve blocks 3 are installed on the moving support 2, which provides stable support for the lifting and moving; and the lifting concave limiting blocks 4 are movably inserted into the inner side of the lifting concave sleeve blocks 3, together with the back-to-back sleeve block 7, which ensures the accurate positioning of the lifting threaded pipes 5 and the lifting threaded rods 6 during the lifting process; in order to realize the adjustment of the horizontal moving angle of the dropping tank 1, the horizontal angle drive machine 12 starts to work; the horizontal angle drive machine 12 is installed on the inner side of the lifting concave limiting block 4, and the driving end thereof is connected with the horizontal angle gear 11; the lifting convex cylindrical block 10 is provided with a gear groove, and the horizontal angle gear 11 is in gear engagement with the gear groove; therefore, when the horizontal angle drive machine 12 operates, the horizontal angle gear 11 will drive the lifting convex cylindrical block 10 to rotate in the horizontal moving direction, thereby realizing the adjustment of the horizontal moving angle of the dropping tank 1; the auxiliary drive assembly is installed on the lifting convex cylindrical block 10, which provides additional support and driving force for the further moving or adjustment of the dropping tank 1; through the cooperation of the lifting and moving structure and the auxiliary drive assembly, the high-safety dropping tank 1 can flexibly and accurately adjust its height, position and angle, meet different use requirements, and support the dropping tank 1 with the two pairs of lifting concave sleeve blocks 3 and the moving support 2; the two pairs of concave bearing blocks 13, as the core support structure, are stably installed on the two pairs of lifting convex cylindrical blocks 10 respectively; a pair of lifting bearing grooves is formed on each of the two pairs of concave bearing blocks 13, which provides necessary space for the subsequent moving and buffering; the four pairs of lifting L-shaped bearing blocks 14 are flexibly inserted into the four pairs of lifting bearing grooves, which not only can freely slide in the grooves, but also bear the heavy responsibility of transmitting the moving driving force; at the same time, the eight pairs of lifting limiting shafts 15 are accurately inserted between the lifting bearing grooves and the four pairs of lifting L-shaped bearing blocks 14, which not only ensures the stability of the L-shaped bearing blocks during the moving process, but also provides necessary guidance for them; in order to enhance the stability of the moving, the eight pairs of lifting buffering springs 16 are ingeniously sleeved on the lifting limiting shafts 15; these springs can elastically deform when subjected to external force, thereby effectively absorbing and relieving the impact and vibration generated during the moving process;In addition, eight pairs of buffer repulsion magnets are installed on the inner side of the lifting L-shaped bearing block 14 and the lifting bearing groove, and the magnetic repulsion force generated therebetween further enhances the stability of movement and helps prevent sudden impact caused by external force; when the drop tank 1 needs to be moved, two pairs of moving drive machines 19 start to start; their driving ends are connected with two pairs of lifting moving wheels 18 respectively, and the moving driving force is generated through the rotation of the driving wheels; these driving forces are transmitted to the drop tank 1 through the transmission components such as the lifting L-shaped bearing block 14, the lifting limiting shaft 15 and the concave bearing block 13, so that the stable and accurate movement of the drop tank 1 is realized.

[0022] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A high-safety dripping vessel, comprising: A dripping tank, a movable support, and a lifting and moving structure are provided. The dripping tank is mounted on the movable support, and the lifting and moving structure is mounted on the movable support. The lifting and moving structure comprises: two pairs of lifting concave sleeve blocks, two pairs of lifting concave limiting blocks, two pairs of lifting threaded tubes, two pairs of lifting threaded rods, a loop sleeve block, a lifting drive motor, a lifting gear set, two pairs of lifting convex cylindrical blocks, two pairs of horizontal angle gears, two pairs of horizontal angle drive motors, and auxiliary drive components. Two pairs of the aforementioned lifting concave-shaped sleeve blocks are mounted on the movable bracket; two pairs of the aforementioned lifting concave-shaped limiting blocks are movably inserted into the inner side of the two pairs of the aforementioned lifting concave-shaped sleeve blocks; the spiral-shaped sleeve block is mounted on the two pairs of the aforementioned lifting concave-shaped limiting blocks; two pairs of the aforementioned lifting threaded tubes are respectively inserted into the spiral-shaped sleeve block and the two pairs of the aforementioned lifting concave-shaped limiting blocks via bearings; two pairs of the aforementioned lifting threaded rods are respectively movably inserted into the inner side of the two pairs of the aforementioned lifting threaded tubes; the lifting gear set is mounted on the two pairs of the aforementioned lifting threaded tubes; and the lifting drive motor is mounted on the inner side of the spiral-shaped sleeve block. The lifting drive motor is connected to the lifting gear set. Two pairs of lifting convex cylindrical blocks are inserted into the inner side of two pairs of lifting concave limiting blocks through bearings. Two pairs of horizontal angle drive motors are respectively installed on the inner side of two pairs of lifting concave limiting blocks. Gear slots are respectively opened on the two pairs of lifting convex cylindrical blocks. Two pairs of horizontal angle gears are respectively installed on the drive ends of the two pairs of horizontal angle drive motors, and the two pairs of horizontal angle gears are respectively engaged with several gear slots. The auxiliary drive assembly is installed on the two pairs of lifting convex cylindrical blocks.

2. The high-safety dripping tank according to claim 1, characterized in that, The auxiliary drive assembly includes: two pairs of concave bearing blocks, four pairs of lifting L-shaped bearing blocks, eight pairs of lifting limit shafts, eight pairs of lifting buffer springs, eight pairs of buffer repulsion lifting magnets, two pairs of lifting moving wheels, and two pairs of moving drive motors. Two pairs of concave bearing blocks are respectively installed on two pairs of lifting convex cylindrical blocks. Each pair of concave bearing blocks has a pair of lifting bearing slots. Four pairs of lifting L-shaped bearing blocks are movably inserted into the inner side of the four pairs of lifting bearing slots. Eight pairs of lifting limit shafts are respectively inserted into the inner side of the four pairs of lifting bearing slots, and the eight pairs of lifting limit shafts are movably inserted into the four pairs of lifting L-shaped bearing blocks. Eight pairs of lifting buffer springs are respectively fitted onto the eight pairs of lifting limit shafts. Eight pairs of buffer repulsion magnets are respectively installed on the inner side of the four pairs of lifting L-shaped bearing blocks and the four pairs of lifting bearing slots. Two pairs of lifting moving wheels are inserted into the four pairs of lifting L-shaped bearing blocks. The driving ends of two pairs of moving drive motors are respectively connected to the two pairs of lifting moving wheels.

3. The high-safety dripping tank according to claim 2, characterized in that, Each of the two pairs of lifting concave limiting blocks is provided with two pairs of lifting sliders, and each of the two pairs of lifting concave fitting blocks has two pairs of lifting slides on its inner side. The eight pairs of lifting sliders are movably inserted into the inner side of the eight pairs of lifting slides.

4. A high-safety dripping tank according to claim 3, characterized in that, The movable support is provided with two pairs of buffer plates and has several telescopic slides. Several telescopic sliders are provided on the two pairs of buffer plates, and the telescopic sliders are movably inserted into the inner side of the telescopic slides. Several buffer magnets are provided on the telescopic slides and the telescopic sliders.

5. A high-safety dripping tank according to claim 4, characterized in that, Each of the two pairs of buffer plates is provided with a rubber ring.

6. A high-safety dripping tank according to claim 5, characterized in that, The two pairs of lifting concave sleeve blocks are provided with U-shaped support rubber rings.